Voltage rise suppression circuit and panel television
Included are a Zener diode D 2 having a cathode connected onto a voltage output line, dividing resistors having one terminal connected to the anode of the Zener diode D 2 and having the other terminal grounded, a transistor Q 1 having a base connected to the junction point between the dividing resistors via a resistor and having an emitter grounded, a transistor Q 2 having a base connected to the junction point between the dividing resistors and having an emitter grounded, and a microcomputer having an undervoltage detection terminal 10 a which is connected to the collector of the transistor Q 1 and to which 3.3 V is externally applied and a power supply terminal 10 b which is connected to the collector of the transistor Q 2 and via which a P-ON-H signal of 3.3 V that starts a power supply circuit 126 when the power supply is turned on is transmitted.
1. A panel television that includes a voltage rise suppression circuit that suppresses an excessive rise in an output voltage under a control of a microcomputer that monitors a voltage output line of a flyback power supply circuit, and that displays a picture on a flat panel display according to a television signal while being supplied a supply voltage from the flyback power supply circuit, comprising:
the flyback power supply circuit is controlled based on a feedback signal that is fed back over the voltage output line;
the voltage rise suppression circuit includes: a first Zener diode having a cathode coupled with the voltage output line and having an anode that is grounded; a second Zener diode having a cathode coupled with the voltage output line; dividing resistors having one terminal coupled with an anode of the second Zener diode and having the other terminal grounded; a first transistor having a base coupled with a junction point between the dividing resistors via a first resistor and having an emitter that is grounded; a second transistor having a base coupled with the junction point between the dividing resistors via a second resistor and having an emitter that is grounded; and a microcomputer having an undervoltage detection terminal that is connected to a collector of the first transistor and to which a fixed voltage is externally applied and a power supply terminal that is connected to a collector of the second transistor and via which a P-ON-H signal that starts the flyback power supply circuit when the power supply is turned on is transmitted;
when the output voltage rises, a Zener current flows through the second Zener diode, a voltage is developed at the junction point, and the voltage is applied to the bases of the first and second transistors respectively; the first and second transistors are turned on; the voltage at the undervoltage detection terminal is routed to a ground, and the P-ON-H signal to be sent to the flyback power supply circuit via the power supply terminal is also routed to the ground; the power supply circuit stops and the output voltage drops; when the output voltage drops to fall within a normal range, the Zener current does not flow through the second Zener diode any longer; the first and second transistors are turned off, and the undervoltage detection terminal and power supply terminal are not grounded any longer; and the P-ON-H signal sent via the power supply terminal reaches the flyback power supply circuit to start the power supply circuit; and
the microcomputer obtains the voltage at the undervoltage detection terminal at intervals of a predetermined number of times;
and when the microcomputer detects a voltage equal to or lower than a predetermined voltage plurality of consecutive times, the microcomputer ceases the transmission of the P-ON-H signal via the power supply terminal.
2. A voltage rise suppression circuit that suppresses an excessive rise in an output voltage by monitoring a voltage output line of a flyback power supply circuit, comprising:
a Zener diode that has a cathode coupled with the voltage output line and that undergoes a Zener breakdown when an output on the voltage output line exceeds a predetermined value;
dividing resistors having one terminal coupled with an anode of the Zener diode and having the other terminal that is grounded;
a first transistor having a base coupled with a junction point between the dividing resistors and having an emitter that is grounded;
an undervoltage detection terminal connected to a collector of the first transistor;
a power supply terminal through which a voltage signal that starts the flyback power supply circuit is transmitted;
a second transistor having a base coupled with the junction point between the dividing resistors, having an emitter that is grounded, and having a collector coupled the power supply terminal; and
a voltage rise suppression unit that controls the power supply terminal according to the voltage at the undervoltage detection terminal.
3. The voltage rise suppression circuit according to claim 2 , wherein the voltage output line is a line over which a voltage to be monitored is fed back in order to control the power supply circuit.
4. The voltage rise suppression circuit according to claim 2 , wherein the voltage rise suppression unit senses a drop in a voltage applied to the undervoltage detection terminal and controls a signal to be transmitted via the power supply terminal.
5. The voltage rise suppression circuit according to claim 2 , wherein: the voltage rise suppression unit detects the voltage applied to the undervoltage detection terminal at intervals of a predetermined time; and when the voltage rise suppression unit senses the voltage being lower than the predetermined voltage a predetermined number of times, the voltage rise suppression unit ceases the transmission of the signal via the power supply terminal so as to stop the power supply circuit.